Transient EPR reveals triplet state delocalization in a series of cyclic and linear π-conjugated porphyrin oligomers

The photoexcited triplet states of a series of linear and cyclic butadiyne-linked porphyrin oligomers were investigated by transient Electron Paramagnetic Resonance (EPR) and Electron Nuclear DOuble Resonance (ENDOR). The spatial delocalization of the triplet state wave function in systems with diff...

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Main Authors: Tait, CE, Neuhaus, P, Peeks, MD, Anderson, HL, Timmel, CR
Format: Journal article
Language:English
Published: American Chemical Society 2015
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author Tait, CE
Neuhaus, P
Peeks, MD
Anderson, HL
Timmel, CR
author_facet Tait, CE
Neuhaus, P
Peeks, MD
Anderson, HL
Timmel, CR
author_sort Tait, CE
collection OXFORD
description The photoexcited triplet states of a series of linear and cyclic butadiyne-linked porphyrin oligomers were investigated by transient Electron Paramagnetic Resonance (EPR) and Electron Nuclear DOuble Resonance (ENDOR). The spatial delocalization of the triplet state wave function in systems with different numbers of porphyrin units and different geometries was analyzed in terms of zero-field splitting parameters and proton hyperfine couplings. Even though no significant change in the zero-field splitting parameters (D and E) is observed for linear oligomers with two to six porphyrin units, the spin polarization of the transient EPR spectra is particularly sensitive to the number of porphyrin units, implying a change of the mechanism of intersystem crossing. Analysis of the proton hyperfine couplings in linear oligomers with more than two porphyrin units, in combination with density functional theory calculations, indicates that the spin density is localized mainly on two to three porphyrin units rather than being distributed evenly over the whole π-system. The sensitivity of the zero-field splitting parameters to changes in geometry was investigated by comparing free linear oligomers with oligomers bound to a hexapyridyl template. Significant changes in the zero-field splitting parameter D were observed, while the proton hyperfine couplings show no change in the extent of triplet state delocalization. The triplet state of the cyclic porphyrin hexamer has a much decreased zero-field splitting parameter D and much smaller proton hyperfine couplings with respect to the monomeric unit, indicating complete delocalization over six porphyrin units in this symmetric system. This surprising result provides the first evidence for extensive triplet state delocalization in an artificial supramolecular assembly of porphyrins.
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spelling oxford-uuid:acae16c0-6486-446c-b05e-21468abf1b8a2023-09-26T10:24:59ZTransient EPR reveals triplet state delocalization in a series of cyclic and linear π-conjugated porphyrin oligomersJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:acae16c0-6486-446c-b05e-21468abf1b8aEnglishSymplectic Elements at OxfordAmerican Chemical Society2015Tait, CENeuhaus, PPeeks, MDAnderson, HLTimmel, CRThe photoexcited triplet states of a series of linear and cyclic butadiyne-linked porphyrin oligomers were investigated by transient Electron Paramagnetic Resonance (EPR) and Electron Nuclear DOuble Resonance (ENDOR). The spatial delocalization of the triplet state wave function in systems with different numbers of porphyrin units and different geometries was analyzed in terms of zero-field splitting parameters and proton hyperfine couplings. Even though no significant change in the zero-field splitting parameters (D and E) is observed for linear oligomers with two to six porphyrin units, the spin polarization of the transient EPR spectra is particularly sensitive to the number of porphyrin units, implying a change of the mechanism of intersystem crossing. Analysis of the proton hyperfine couplings in linear oligomers with more than two porphyrin units, in combination with density functional theory calculations, indicates that the spin density is localized mainly on two to three porphyrin units rather than being distributed evenly over the whole π-system. The sensitivity of the zero-field splitting parameters to changes in geometry was investigated by comparing free linear oligomers with oligomers bound to a hexapyridyl template. Significant changes in the zero-field splitting parameter D were observed, while the proton hyperfine couplings show no change in the extent of triplet state delocalization. The triplet state of the cyclic porphyrin hexamer has a much decreased zero-field splitting parameter D and much smaller proton hyperfine couplings with respect to the monomeric unit, indicating complete delocalization over six porphyrin units in this symmetric system. This surprising result provides the first evidence for extensive triplet state delocalization in an artificial supramolecular assembly of porphyrins.
spellingShingle Tait, CE
Neuhaus, P
Peeks, MD
Anderson, HL
Timmel, CR
Transient EPR reveals triplet state delocalization in a series of cyclic and linear π-conjugated porphyrin oligomers
title Transient EPR reveals triplet state delocalization in a series of cyclic and linear π-conjugated porphyrin oligomers
title_full Transient EPR reveals triplet state delocalization in a series of cyclic and linear π-conjugated porphyrin oligomers
title_fullStr Transient EPR reveals triplet state delocalization in a series of cyclic and linear π-conjugated porphyrin oligomers
title_full_unstemmed Transient EPR reveals triplet state delocalization in a series of cyclic and linear π-conjugated porphyrin oligomers
title_short Transient EPR reveals triplet state delocalization in a series of cyclic and linear π-conjugated porphyrin oligomers
title_sort transient epr reveals triplet state delocalization in a series of cyclic and linear π conjugated porphyrin oligomers
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AT neuhausp transienteprrevealstripletstatedelocalizationinaseriesofcyclicandlinearpconjugatedporphyrinoligomers
AT peeksmd transienteprrevealstripletstatedelocalizationinaseriesofcyclicandlinearpconjugatedporphyrinoligomers
AT andersonhl transienteprrevealstripletstatedelocalizationinaseriesofcyclicandlinearpconjugatedporphyrinoligomers
AT timmelcr transienteprrevealstripletstatedelocalizationinaseriesofcyclicandlinearpconjugatedporphyrinoligomers